Abstract

To evaluate the actual status of water quality and conclude on the mains source of pollution in the Nyong estuary River, seasonal and spatial variation of water quality parameters was interpreted by multivariate statistical techniques (Principal Component analysis). Nine (09) environmental variables were monitored at four surface stations in the estuary for two seasonal cycles. The fieldwork was conducted from 2018 to 2019 during high tide and low tide for each survey. In situ physical parameters were measured for a total of 64 samples (32 samples for each tide). The laboratory works consisted of some physicochemical analyses and processing of these data by descriptive and multidimensional statistical analyses. Temperature, suspended particle matter, nitrate, nitrite and phosphate change significantly in the estuary with season (p p > 0.05). Principal Component analysis found temperature, salinity, pH, ammonium to be the most important parameters contributing to the fluctuations of surface water quality in the Nyong estuary during the dry seasons whereas suspended particle matter, nitrate, and phosphate are the most important parameters contributing to the fluctuation of surface water quality in the Nyong estuary during the rainy seasons. Based on spatial variation, the Principal Component analysis found that, suspended particle matter, nitrate and phosphate contribute to the fluctuation of surface water quality parameters upstream of the estuary while downstream salinity, pH, and ammonium contribute the most to the fluctuation of surface water quality. This study shows us the usefulness of multivariate statistical techniques used in assessing water quality data sets that would help us in understanding seasonal and spatial variations of water quality parameters to manage estuarine systems.

Highlights

  • According to [1], estuaries is a semi-enclosed coastal body of water which has a free connection with the open sea, with extending upriver up to the tidal influence limit, and within which sea water is measurably diluted with fresh water derived from land drainage

  • To evaluate the actual status of water quality and conclude on the mains source of pollution in the Nyong estuary River, seasonal and spatial variation of water quality parameters was interpreted by multivariate statistical techniques (Principal Component analysis)

  • Principal Component analysis found temperature, salinity, pH, ammonium to be the most important parameters contributing to the fluctuations of surface water quality in the Nyong estuary during the dry seasons whereas suspended particle matter, nitrate, and phosphate are the most important parameters contributing to the fluctuation of surface water quality in the Nyong estuary during the rainy seasons

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Summary

Introduction

According to [1], estuaries is a semi-enclosed coastal body of water which has a free connection with the open sea, with extending upriver up to the tidal influence limit, and within which sea water is measurably diluted with fresh water derived from land drainage In natural conditions, they are biologically more productive than the rivers and the adjacent ocean, due to their high nutrient concentration which stimulates primary production. Strongly affected by tidal actions, where land, river and sea merge into a dynamic natural complex These ecosystems receive large quantities of land—based nutrients and other pollutants from agriculture, industrial activities, human exploitation of water resources (domestic and industrial) and urban runoff which strongly affect water quality [3] [4] [5] [6]. Environmental conditions such as salinity, oxygen, temperature, light, electrical conductivity, turbidity, and nutrients influence the composition, distribution and growth of organisms, monitoring water quality in aquatic ecosystems and, especially in estuaries is essential for their sustainable management

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